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通过HCl和HO的化学吸附/解吸实现无孔铜(II)配合物的可逆单晶到单晶转变及磁变化

Reversible Single-Crystal-to-Single-Crystal Transformation and Magnetic Change of Nonporous Copper(II) Complexes by the Chemisorption/Desorption of HCl and HO.

作者信息

Cai Li-Zhen, Jiang Xiao-Ming, Zhang Zhang-Jing, Guo Pei-Yu, Jin Ai-Ping, Wang Ming-Sheng, Guo Guo-Cong

机构信息

State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences (CAS) , Fuzhou, Fujian 350002, P. R. China.

College of Chemistry and Chemical Engineering, Fujian Provincial Key Laboratory of Polymer Materials, Fujian Normal University , 32 Shangsan Road, Fuzhou 350007, P. R. China.

出版信息

Inorg Chem. 2017 Feb 6;56(3):1036-1040. doi: 10.1021/acs.inorgchem.6b02671. Epub 2017 Jan 10.

Abstract

Vapor-responsive magnetic materials are highly promising for applications as chemical switches or sensors. Compared with porous materials, nonporous species benefit in overcoming the intrinsic conflict between magnetic exchange and porosity but usually suffer from the powdering of single crystals, which hinders the understanding of the structural nature of vapor response and magnetic switch. Single-crystal-to-single-crystal (SCSC) transformation of nonporous compounds through the desorption/absorption of gaseous HCl is unprecedented. Reported here is a discrete nonporous copper(II) complex, (HO)[K(15-crown-5)][CuCl], that exhibits reversible SCSC transformation and magnetic change by the chemisorption/desorption of HCl and HO. Significant changes in the coordination number (4 ↔ 3), space group (P1̅ ↔ P2/c), color (green ↔ red), and magnetic behavior (antiferromagnetic ↔ paramagnetic) were found during the SCSC transformation.

摘要

蒸汽响应型磁性材料在作为化学开关或传感器的应用方面极具潜力。与多孔材料相比,无孔材料在克服磁交换与孔隙率之间的内在冲突方面具有优势,但通常会受到单晶粉末化的影响,这阻碍了对蒸汽响应和磁开关结构本质的理解。通过气态HCl的脱附/吸附实现无孔化合物的单晶到单晶(SCSC)转变是前所未有的。本文报道了一种离散的无孔铜(II)配合物,(HO)[K(15-冠-5)][CuCl],它通过HCl和HO的化学吸附/脱附表现出可逆的SCSC转变和磁变化。在SCSC转变过程中发现了配位数(4 ↔ 3)、空间群(P1̅ ↔ P2/c)、颜色(绿色 ↔ 红色)和磁行为(反铁磁 ↔ 顺磁)的显著变化。

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